
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
To: Joe Dichoso FCC Application Processing Branch Re: FCC ID APV09001 Applicant: Standard Communications Corporation Correspondence Reference Number: 18561 731 Confirmation Number: EA99920 1) Confirm that you are applying for the 3 Watt version only. Response: A new revise report has been uploaded to reflect the change. Both the CMM 7700 and 8700 are 3 watts in output power the only difference is the protocol software embedded in the units. The user will not have the ability to change the power output. 2) We will not grant modules in Part 22 for use in portable devices. The module can only be used in mobile devices. Provide an RF safety exhibit for showing compliance with the MPE requirements. Insert the exhibit in the RF exposure info folder. Indicate the manual installation and user instructions to comply with MPE limits. Take into account all antennas and the antenna gains and make sure the conducted output power matches the conducted output power in the EMC report. The current EMC report has conducted data only at 3300mW(35.17 dBm) Response: MPE measurements were performed and report with data has been uploaded to the RF exposure exhibit folder. For MPE measurements only the Highest Gain antenna was tested (2.5dBi) 3) Provide a manual. Response: An OEM system integration guide has been uploaded to the RF Exposure exhibit folder. 4) Photo's of all antennas. List their gains. Response: All antennas, antenna gains, and power in ERP and EIRP have been listed in the MPE report (Page # 3) and uploaded to the RF Exposure exhibit. Photos and specifications of the antennas have also been uploaded. 5) Justify the necessary bandwidth for the emission designator. Response: B = 2M + 2D k=1; Modulation frequency was 10 kHz and deviation was +/- 8 kHz, since modulation is Wideband data. B = 2(10) + 2(8) = 36 kHz Necessary Bandwidth is 36K0F1D
M. MALIN 11/20/2000 1/1 467V491010 CRM8700/7700 S. KIMATA 467B 1/1 APPROVED BY R E M A R K 7 4321 C B A E D C B A 654321 PAGE PART CODE PART NAME PRJ. TREATMENT MATERIAL DESIGNED BY SCALE TOOL2TOOL1DATEORDER
CMM8700 Bottom View Standard Communications Corp. 1111 Knox St., Torrance, CA 90502 Voice: (310) 532-5300 November 20, 2000
CRM4200 Top View Standard Communications Corp. 1111 Knox St., Torrance, CA 90502 Voice: (310) 532-5300 November 20, 2000
File: R39897 Page 1 of 17 RF Hazard Evaluation Report on the Cellular OEM Module Model: CMM7700 & 8700 GRANTEE:Standard Communications Corp. 1111 Knox St. Torrance, CA 90502 TEST SITE:Elliott Laboratories, Inc. 684 W. Maude Ave Sunnyvale, CA 94086 REPORT DATE:April 12, 2001 FINAL TEST DATE:April 11, 2001 AUTHORIZED SIGNATORY:______________________________ Juan Martinez EMC Engineer This report shall not be reproduced, except in its entirety, without the written approval of Elliott Laboratories, Inc. Elliott Laboratories, Inc. -- EMC DepartmentTest Report Report Date: April 11, 2001 File: R39897Page 2 of 6 pages TABLE OF CONTENTS COVER PAGE ............................................................................................................................................................. 1 TABLE OF CONTENTS.............................................................................................................................................. 2 GENERAL INFORMATION ....................................................................................................................................... 3 SCOPE ........................................................................................................................................................................... 4 OBJECTIVE.................................................................................................................................................................. 4 TEST RESULTS ........................................................................................................................................................... 5 S ECTION 2.1091: R ADIOFREQUENCY RADIATION EXPOSURE EVALUATION : M OBILE DEVICES .................... 5 EQUIPMENT UNDER TEST (EUT) DETAILS......................................................................................................... 6 ENCLOSURE............................................................................................................................................................. 6 SUPPORT EQUIPMENT ........................................................................................................................................... 6 EXTERNAL I/O CABLING....................................................................................................................................... 6 TEST SOFTWARE .................................................................................................................................................... 6 TEST MODES ........................................................................................................................................................... 6 EXHIBIT 1: Test Equipment Calibration Data .................................................................................................... 1 EXHIBIT 2: Test Measurement Data ................................................................................................................... 2 EXHIBIT 3: Photographs of Test Configuration ................................................................................................. 3 EXHIBIT 4: Integration Guide ............................................................................................................................. 4 Elliott Laboratories, Inc. -- EMC DepartmentTest Report Report Date: April 11, 2001 File: R39897Page 3 of 6 pages GENERAL INFORMATION Applicant:Standard Communication Corp. 1111 Knox St. Torrance, CA 90502 FCC ID: APV09001 Technical Description The CMM 7700 and CMM 8700 Cellular Radio Modules are OEM radio modules for use in embedded wireless data and other applications. They are part of a series of modules providing solutions for customers with limited levels of RF expertise. They provide a flexible turnkey module solution that can be used to implement all of the functionality of a Wideband cellular telephone into a variety of imbedded applications. The CMM 7700 and 8700 are a fully functional Wideband cellular telephone module with a 3W (Class I) of maximum output power. The difference between the CMM 7800 and 8700 is the protocol embedded in the units. Standard Communication will use the Centurion dipole antenna with their developer kits and will be using the Astron antenna (2.5dBi) in the kits in the future. But, for now the Centurion (Model: EXE-821-SM) 2.5 dBi gain antenna will be sold in the kit. * Centurion Antenna: Model: EXE-821-SM 2.5dBi gain * Centurion Antenna: ½ wave center fed (dipole) design 0dBd gain (unity) * Centurion Antenna: ¼ wave end fed 2 dBi gain Frequency Range Transmitter: 824.01 – 848.97 MHz Receiver: 869.01 – 893.97 MHz Range of Operation Power 3-Watt maximum power output ERP (Watts) EIPR(Watts) Centurion Antenna: 2.5dBi gain 5.33 8.75 Centurion Antenna: 0dBd gain (unity) 3 5 Centurion Antenna: 2 dBi gain 4.75 7.79 Elliott Laboratories, Inc. -- EMC DepartmentTest Report Report Date: April 11, 2001 File: R39897Page 4 of 6 pages SCOPE RF Hazard Evaluation testing was performed for the equipment mentioned in this report. OET Bulletin 65 or the ANSI/IEEE C95.3, "IEEE Recommended Practice for the Measurement of Potentially Hazardous Electromagnetic Fields - RF and Microwave" were used as a test procedure guideline to perform the required test. MPE measurements were performed for this product. The intentional radiator above was tested in a simulated typical installation to demonstrate compliance with the relevant FCC performance and procedural standards. OBJECTIVE The primary objective of the manufacturer is compliance with Section 2.1091. Certification of these devices is required as a prerequisite to marketing as defined in Section 2.1033. Certification is a procedure where the manufacturer or a contracted laboratory makes measurements and submits the test data and technical information to FCC. FCC issues a grant of equipment authorization and a certification number upon successful completion of their review …
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Standard Communications Corp. Integration Guide Cellular Modem Module CMM7700/8700 1January 1st, 2000 Integration Guide CMM7700/CMM7700/8700 MicroBurst ™ Cellular Modem Module Standard Communications Corp. 1111 Knox St. Torrance, CA 90502 800-767-2831 Standard Communications Corp. Integration Guide Cellular Modem Module CMM7700/8700 2January 1st, 2000 Document Changes: DateDocume nt Re visionDe tails Standard Communications Corp. Integration Guide Cellular Modem Module CMM7700/8700 3January 1st, 2000 RF SAFETY WARNING This device and associated antenna must be installed in a location at least 20cm from the body of the user or other nearby persons in order to comply with the FCC RF exposure guidelines. The above warning must be included in the user documentation of the final product that these modules are incorporated into. A warning label should also be included on the exterior of the device. IMPORTANT!! Performance and compliance with FCC rules are heavily influenced by final packaging and antenna configuration of the end-product. Installations not complying with the 20cm minimum separation requirement, using substantially different antenna configurations from those described herein, or utilizing operating voltages outside of the normal specifications must be evaluated for compliance with FCC Rules and RF exposure requirements. Responsibility for compliance of the final product is the responsibility of the end-product manufacturer. Refer to the following resources for additional information regarding FCC rules and RF Safety Guidelines for this type of devices: 47CFR Part 22 Subpart H 47CFR Part 1.1307 – 1.1310 47CFR Part 2.1091, 2.1093 Federal Communications Commission (FCC) Primary website: www.fcc.gov Federal Communications Commission Office of Engineering and Technology web site: www.fcc.gov/oet/rfsafety WARNING While this device is in operation, a separation distance of at least 20 centimeters must be maintained between the radiating antenna and the body of all persons exposed to the transmitter in order to meet the FCC RF exposure guidelines. Standard Communications Corp. Integration Guide Cellular Modem Module CMM7700/8700 4January 1st, 2000 The following guide is designed to provide the developer / designer additional information regarding hardware considerations. The sections include detailed design ideas along with tips and tricks we have used in implementing various applications. Each section has a brief description and diagrams to assist you in your planning stages with the CMM7700/8700. MOUNTING The CMM7700/8700 has four mounting holes arranged in the pattern shown in figure 1. If stand-offs are to be used, metal type is the recommended due to added ground potential. In figure 1, the stand-offs set the CMM7700/8700 unit slightly higher than the host PCB. An air gap is not necessary but will allow for PCB to PCB isolation and noise immunity. The standoff used on the evaluation PCB is exaggerated to display the CMM7700/8700. The height of these stand-offs are not necessarily ideal and space can be greatly conserved by using shorter ones. Figure 2. Shows an example of a plate shield already used on an application with the modification of bent tabs to allow for mounting of the CMM7700/8700. This is a relatively inexpensive method of mounting and can be implemented easily when the plate is initially punched. Care should be taken so that the tabs do not extend past the flash area of the mounting holes. Figure 3. Shows the mechanical drawing of the CMM7700/8700 units. These dimensions should be used for mounting and placement purposes. The drawing is illustrated from the bottom side perspective. The antenna and interface connectors are located on the topside of the PCB. Standard Communications Corp. Integration Guide Cellular Modem Module CMM7700/8700 5January 1st, 2000 Standoff (See Detail) CU81K PCB Nut Washer 7728b 4/40 (3.0 mm) Min 0.15" (3 mm) Min 0.250" (6 mm) 0.15" (3 mm) 0.250" (6 mm) Washer Figure 1. Mounting Details Standard Communications Corp. Integration Guide Cellular Modem Module CMM7700/8700 6January 1st, 2000 7733A DETAIL Figure 2. Sheet Metal Tab Detail Standard Communications Corp. Integration Guide Cellular Modem Module CMM7700/8700 7January 1st, 2000 6.0 23.5 30.5 40.5 3.0 60.0 90.73 91.5 3.5 5.0 91.5 95.0 3.5 17.78 4.9 15.82 6.0 2.0 3.0 44.0 1.2 6X - Ø 3.2 ANTENNA CONNECTOR 6.5 57.0 12.5 45.0 7.0 5.75 SHIELD SHIELD HEATSINK 7730 Figure 3. Dimensions Standard Communications Corp. Integration Guide Cellular Modem Module CMM7700/8700 8January 1st, 2000 ANTENNA CONSIDERATIONS The diagrams below illustrate the different antenna selections used for applications. Each example has implementation criteria due to its performance and operation. A. The quarter wave antenna is small and lends itself well into tight applications where space is critical. A ground plane radius of greater than 100mm is required for proper operation. Failure to provide this grounding will result in erratic radiation patterns, signal loss and mismatched impedance to the CMM7700/8700. B. The half wave antenna is twice the length of the quarter wave. It’s properties require less ground plane which make it more ideal for applications that have less metal mass. The antenna has a better radiation pattern. C. The dipole antenna provides a ground-plane-free operation with optimum gain for its size. This antenna provides its own ground-radiating element and can be used with plastic enclosures. D. The loading coil antenna is the largest of the four mentioned but has a gain advantage over the dipole. The loading coil located in the center of the antenna provides electrically longer antenna to radiate the signal better. Standard Communications Corp. Integration Guide Cellular Modem Module CMM7700/8700 9January 1st, 2000 1/4 λλ λ 1/2 1/4 λλ Gain = unity Gain = unity Gain 3-5 dB Loading Coil D 1/4 λλ Gain unity C C B A 50 Ω 1 / 4 λ 1/4 λλ IDEAL GROUND PLANE METAL DISK WITH MINIMUM RADIUS OF 1/4 λ MAIN4 USE 5…
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EMC Test Data Model CMM7700 & 8700 2.1091 MPE: mobile devicesN/A Environment: Class: EMC Test Data For The Standard Communications Standard Communications CMM7700 & 8700 Micheal Malin J41061 T41217 David Bare Job Number: T-Log Number: Proj Eng: Emissions Spec: Immunity Spec: Contact: Client: Model: T-Log: CMM7700MPE, Rev 1.0CoverPage 1 of 4 EMC Test Data Client: Contact: Spec: Test Specifics General Test Configuration Ambient Conditions: Summary of Results Result Pass Pass Margin Refer to individual runs Refer to individual runs2MPE Routing Evaluation.549 mW/cm^2 Modifications Made During Testing: None 1MPE Routing Evaluation.549 mW/cm^2 Rel. Humidity: 45% Run #Test PerformedLimit The EUT was located on the turntable for MPE evaluation testing. The transmit antenna was placed in the middle of the table. The Probe was placed 20 cm from the antenna. Tests were performed inside a Chamber. Temperature:25°C Test Location: Chamber #1EUT Voltage: 12 and 5 Vdc Test Engineer: jmartinezConfig Change: None 2.1091 MPE: mobile devicesClass: N/A Micheal Malin Job Number: J41061 Model: CMM7700 & 8700T-Log Number: T41217 Proj Eng: David Bare Standard Communications RF Hazard (Section 2.1091): Mobile Devices Objective: This test is required per FCC rule part 2 certification procedure. The objective of this test session is to perform final qualification testing the EUT relative to the specification(s) defined above. Date of Test: 4/11/01Config. Used: 1 CMM7700MPEMPE EvalutionPage 2 of 4 EMC Test Data Client: Contact: Spec: 2.1091 MPE: mobile devicesClass: N/A Micheal Malin Job Number: J41061 Model: CMM7700 & 8700T-Log Number: T41217 Proj Eng: David Bare Standard Communications Section 1.1310 RF Hazard MPE limits Uncontrolled/polupoated Run #1: RF Hazard Evaluation Test Fundamental frequency: 831.99 MHz Measured PositionComment mW/cm^2 DegreesLimit (mW/cm^2) MarginNote 0.48500.549-0.0641 and 2 0.385900.549-0.1641 and 2 0.3651800.549-0.1841 and 2 0.5252700.549-0.0241 and 2 Note 1: Note 2: Run #2: RF Hazard Evaluation Test Fundamental frequency: 831.99 MHz Measured PositionComment mW/cm^2 DegreesLimit (mW/cm^2) MarginNote 0.52000.549-0.0291 and 2 0.410900.549-0.1391 and 2 0.4701800.549-0.0791 and 2 0.5182700.549-0.0311 and 2 Note 1: Note 2: 1.1310 1.1310 Measured at 20 cm distance as required by OET 65 C, procedure for RF Hazard evaluation for mobile devices CW only and set to maximum output power. Measured at 20 cm distance as required by OET 65 C, procedure for RF Hazard evaluation for mobile devices Modulation applied and set to maximum output power. 824 MHz / 1500 = .549 mw/cm^2 300 - 1500 MHz Frequency (MHz) Limit (mW/cm^2) Freq. / 1500 CMM7700MPEMPE EvalutionPage 3 of 4 Engineer: jmartinezManufacturer Description Model # Assett # Cal interval Last Calibrated Cal Due Holaday Industries Field Probe 200KHz - 40GHz HI-4455 910 12 4/28/00 4/28/01 Hewlett Packard Microwave EMI test system (SA40, 30Hz - 40GHz) 84125C 1149 12 2/5/01 2/5/02 Hewlett Packard Frequency Generator, 10 Hz-10MHz 651B 2 64, (F13 2 N/A MPE measuremetns, 12-Apr-01 09:26 AM File: CMM7700MPE Test Equipment (Emissions) 4 of 4
Standard Communications Corp. Integration Guide Cellular Modem Module CMM7700/8700 1 January 1st, 2000 +PVGITCVKQP)WKFG %// /KETQ$WTUVã %GNNWNCT/QFGO/QFWNG Standard Communications Corp. 1111 Knox St. Torrance, CA 90502 800-767-2831 Standard Communications Corp. Integration Guide Cellular Modem Module CMM7700/8700 2 January 1st, 2000 Document Changes: Date Document Revision Details Standard Communications Corp. Integration Guide Cellular Modem Module CMM7700/8700 3 January 1st, 2000 RF SAFETY WARNING This device and associated antenna must be installed in a location at least 20cm from the body of the user or other nearby persons in order to comply with the FCC RF exposure guidelines. The above warning must be included in the user documentation of the final product that these modules are incorporated into. A warning label must also be included on the exterior of the device. IMPORTANT!! Performance and compliance with FCC rules are heavily influenced by final packaging and antenna configuration of the end-product. Installations not complying with the 20cm minimum separation requirement, using substantially different antenna configurations from those described herein, or utilizing operating voltages outside of the normal specifications must be evaluated for compliance with FCC Rules and RF exposure requirements. Responsibility for compliance of the final product is the responsibility of the end-product manufacturer. Refer to the following resources for additional information regarding FCC rules and RF Safety Guidelines for this type of devices: 47CFR Part 22 Subpart H 47CFR Part 1.1307 – 1.1310 47CFR Part 2.1091, 2.1093 Federal Communications Commission (FCC) Primary website: www.fcc.gov Federal Communications Commission Office of Engineering and Technology web site: www.fcc.gov/oet/rfsafety WARNING While this device is in operation, a separation distance of at least 20 centimeters must be maintained between the radiating antenna and the body of all persons exposed to the transmitter in order to meet the FCC RF exposure guidelines. Standard Communications Corp. Integration Guide Cellular Modem Module CMM7700/8700 4 January 1st, 2000 The following guide is designed to provide the developer / designer additional information regarding hardware considerations. The sections include detailed design ideas along with tips and tricks we have used in implementing various applications. Each section has a brief description and diagrams to assist you in your planning stages with the CMM7700/8700. MOUNTING The CMM7700/8700 has four mounting holes arranged in the pattern shown in figure 1. If stand-offs are to be used, metal type is the recommended due to added ground potential. In figure 1, the stand-offs set the CMM7700/8700 unit slightly higher than the host PCB. An air gap is not necessary but will allow for PCB to PCB isolation and noise immunity. The standoff used on the evaluation PCB is exaggerated to display the CMM7700/8700. The height of these stand-offs are not necessarily ideal and space can be greatly conserved by using shorter ones. Figure 2. Shows an example of a plate shield already used on an application with the modification of bent tabs to allow for mounting of the CMM7700/8700. This is a relatively inexpensive method of mounting and can be implemented easily when the plate is initially punched. Care should be taken so that the tabs do not extend past the flash area of the mounting holes. Figure 3. Shows the mechanical drawing of the CMM7700/8700 units. These dimensions should be used for mounting and placement purposes. The drawing is illustrated from the bottom side perspective. The antenna and interface connectors are located on the topside of the PCB. Standard Communications Corp. Integration Guide Cellular Modem Module CMM7700/8700 5 January 1st, 2000 Standoff (See Detail) CU81K PCB Nut Washer 7728b 4/40 (3.0 mm) Min 0.15" (3 mm) Min 0.250" (6 mm) 0.15" (3 mm) 0.250" (6 mm) Washer Figure 1. Mounting Details Standard Communications Corp. Integration Guide Cellular Modem Module CMM7700/8700 6 January 1st, 2000 7733A DETAIL Figure 2. Sheet Metal Tab Detail Standard Communications Corp. Integration Guide Cellular Modem Module CMM7700/8700 7 January 1st, 2000 6.0 23.5 30.5 40.5 3.0 60.0 90.73 91.5 3.5 5.0 91.5 95.0 3.5 17.78 4.9 15.82 6.0 2.0 3.0 44.0 1.2 6X - Ø 3.2 ANTENNA CONNECTOR 6.5 57.0 12.5 45.0 7.0 5.75 SHIELD SHIELD HEATSINK 7730 Figure 3. Dimensions Standard Communications Corp. Integration Guide Cellular Modem Module CMM7700/8700 8 January 1st, 2000 ANTENNA SPECIFICATION Standard Communication has provided a Centurion (Model: EXE-821-SM) 2.5 dBi gain antenna with the kit. Only use this antenna with the module. (Please refer to statement below) * Centurion Antenna: Model: EXE-821-SM 2.5dBi gain IMPORTANT!! Performance and compliance with FCC rules are heavily influenced by final packaging and antenna configuration of the end-product. Installations not complying with the 20cm minimum separation requirement, using substantially different antenna configurations from those described above, or utilizing operating voltages outside of the normal specifications must be evaluated for compliance with FCC Rules and RF exposure requirements. Responsibility for compliance of the final product with a different antenna(s) is the responsibility of the OEM end-product manufacturer and will required a new MPE measurement. The new application can be submitted as a Class II Permissive change with the new antenna(s). Standard Communications Corp. Integration Guide Cellular Modem Module CMM7700/8700 9 January 1st, 2000 SHIELDING CONSIDERATIONS When planning the PCB layout for an application some design rules and layout plans should be considered. The following diagrams show various mounting configurations with respect to shielding. Often the application PCB does not allow for separate ground plane implementation. In these cases a list of design rules should be used in order…
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File: R39897 Page 1 of 17 RF Hazard Evaluation Report on the Cellular OEM Module Model: CMM7700 & 8700 GRANTEE: Standard Communications Corp. 1111 Knox St. Torrance, CA 90502 TEST SITE: Elliott Laboratories, Inc. 684 W. Maude Ave Sunnyvale, CA 94086 REPORT DATE: April 12, 2001 FINAL TEST DATE: April 11, 2001 AUTHORIZED SIGNATORY: ______________________________ Juan Martinez EMC Engineer This report shall not be reproduced, except in its entirety, without the written approval of Elliott Laboratories, Inc. Elliott Laboratories, Inc. -- EMC Department Test Report Report Date: April 11, 2001 File: R39897 Page 2 of 6 pages TABLE OF CONTENTS COVER PAGE ........................................................................................................................................................... 1 TABLE OF CONTENTS ..........................................................................................................................................2 GENERAL INFORMATION ..................................................................................................................................3 SCOPE........................................................................................................................................................................4 OBJECTIVE..............................................................................................................................................................4 TEST RESULTS........................................................................................................................................................5 S ECTION 2.1091: RADIOFREQUENCY RADIATION EXPOSURE EVALUATION: MOBILE DEVICES.................. 5 EQUIPMENT UNDER TEST (EUT) DETAILS....................................................................................................6 ENCLOSURE ......................................................................................................................................................... 6 SUPPORT EQUIPMENT ...................................................................................................................................... 6 EXTERNAL I/O CABLING .................................................................................................................................. 6 TEST SOFTWARE ................................................................................................................................................ 6 TEST MODES........................................................................................................................................................ 6 EXHIBIT 1: Test Equipment Calibration Data .................................................................................................1 EXHIBIT 2: Test Measurement Data ................................................................................................................2 EXHIBIT 3: Photographs of Test Configuration...............................................................................................3 EXHIBIT 4: Integration Guide ..........................................................................................................................4 Elliott Laboratories, Inc. -- EMC Department Test Report Report Date: April 11, 2001 File: R39897 Page 3 of 6 pages GENERAL INFORMATION Applicant: Standard Communication Corp. 1111 Knox St. Torrance, CA 90502 FCC ID: APV09001 Technical Description The CMM 7700 and CMM 8700 Cellular Radio Modules are OEM radio modules for use in embedded wireless data and other applications. They are part of a series of modules providing solutions for customers with limited levels of RF expertise. They provide a flexible turnkey module solution that can be used to implement all of the functionality of a Wideband cellular telephone into a variety of imbedded applications. The CMM 7700 and 8700 are a fully functional Wideband cellular telephone module with a 3W (Class I) of maximum output power. The difference between the CMM 7800 and 8700 is the protocol embedded in the units. Standard Communication will use the Centurion dipole antenna with their developer kit. The Centurion (Model: EXE-821-SM) 2.5 dBi gain antenna will be sold with the kit. • Centurion Antenna (Model: EXE-821-SM), 2.5dBi gain Frequency Range Transmitter: 824.01 – 848.97 MHz Receiver: 869.01 – 893.97 MHz Range of Operation Power 3-Watt maximum power output ERP (Watts) EIPR(Watts) Centurion Antenna: 2.5dBi gain 3.558 5.836 Elliott Laboratories, Inc. -- EMC Department Test Report Report Date: April 11, 2001 File: R39897 Page 4 of 6 pages SCOPE RF Hazard Evaluation testing was performed for the equipment mentioned in this report. OET Bulletin 65 or the ANSI/IEEE C95.3, "IEEE Recommended Practice for the Measurement of Potentially Hazardous Electromagnetic Fields - RF and Microwave" were used as a test procedure guideline to perform the required test. MPE measurements were performed for this product. The intentional radiator above was tested in a simulated typical installation to demonstrate compliance with the relevant FCC performance and procedural standards. OBJECTIVE The primary objective of the manufacturer is compliance with Section 2.1091. Certification of these devices is required as a prerequisite to marketing as defined in Section 2.1033. Certification is a procedure where the manufacturer or a contracted laboratory makes measurements and submits the test data and technical information to FCC. FCC issues a grant of equipment authorization and a certification number upon successful completion of their review of the submitted documents. Once the equipment authorization has been obtained, the label indicating compliance must be attached to all identical units subsequently manufactured. Elliott Laboratories, Inc. -- EMC Department Test Report Report Date: April 11, 2001 File: R39897 Page 5 of 6 pages TEST RESULTS Section 2.1091: Radiofrequency radia…
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To: Joe Dichoso FCC Application Processing Branch Re: FCC ID APV09001 Applicant: Standard Communications Corporation Correspondence Reference Number: 18909 731 Confirmation Number: EA99920 Please add the following person as an authorized contact for this application. Steve Hall Vice President and Chief Technical Officer of Standard Communication 1111 Knox St Torrance CA 90502 EMAIL: [email protected] (310) 532-5300 main tel (408) 930-3815 direct tel 1) The exhibit "Statement regarding compliance of Standard Communications Wireless Modules with regulat…
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684 West Maude Ave · Sunnyvale, California · United States
| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 1 | 22 | 824.01 MHz - 848.97 MHz | 3 W | 36K0F1D | 2.5000000000 ppm |
Vehicular Telematics Device
Equipment Class
PCB - PCS Licensed TransmitterLTE CAT1 Telematics Gateway
Equipment Class
DTS - Digital Transmission System
Heavy Duty Telematics Gateway
Equipment Class
PCB - PCS Licensed Transmitter
LTE CAT-M1 Telematics Gateway
Equipment Class
PCB - PCS Licensed Transmitter
Remote location monitoring unit.
Equipment Class
PCB - PCS Licensed Transmitter